医学
磁共振成像
内科学
骨骼肌
部分各向异性
萧条(经济学)
磷酸肌酸
心脏病学
人口
磁共振弥散成像
放射科
能量代谢
环境卫生
宏观经济学
经济
作者
Sai Man Cheung,Karen Forrest Keenan,Nicholas Senn,Gayle Hutcheon,Kwok‐Shing Chan,Lars P. Erwig,Andrew Schrepf,Paula Dospinescu,Stuart R. Gray,Gordon D. Waiter,Jiabao He,Neil Basu
摘要
To investigate the potential structural and metabolic role of skeletal muscle in systemic lupus erythematosus (SLE)-related fatigue.A case-control, multimodal magnetic resonance imaging (MRI) study was conducted. Cases were patients with inactive SLE who reported chronic fatigue. Controls were age- and sex-matched healthy members of the general population. Patients were clinically characterized and then underwent a 3T whole-body MRI scan. Resting and dynamic 31 P MRI spectroscopy of the calf muscles was applied, from which phosphocreatine (PCr) recovery halftime, a marker of mitochondrial dysfunction, was computed. In addition, microstructural sequences (T1-weighted anatomic images, T2 mapping, and diffusion tensor imaging) were acquired. Descriptive statistics evaluated group differences and within-case physical fatigue correlations were explored.Of the 37 recruits (mean age 43.8 years, 89.2% female), cases (n = 19) reported higher levels of physical fatigue, pain, depression, and sleep disturbance compared to the control group (P < 0.0001). PCr was greater (P = 0.045) among cases (mean ± SD 33.0 ± 9.0 seconds) compared to controls (mean ± SD 27.1 ± 6.6 seconds). No microstructural group differences were observed. Within cases, physical fatigue did not correlate with PCr (r = -0.28, P = 0.25).We report preliminary data demonstrating greater skeletal muscle mitochondrial dysfunction among fatigued patients with SLE compared to healthy controls.
科研通智能强力驱动
Strongly Powered by AbleSci AI